Tolle Giulia, Serreli Gabriele, Deiana Monica, Moi Loredana, Zavattari Patrizia, Pantaleo Antonella, Manis Cristina, El Faqir Mohammed Amine, Caboni Pierluigi
Department of Life and Environmental Sciences, University of Cagliari, 09042 Monserrato, Italy.
Unit of Experimental Pathology, Department of Biomedical Sciences, University of Cagliari, 09042 Monserrato, Italy.
Int J Mol Sci. 2024 Nov 25;25(23):12638. doi: 10.3390/ijms252312638.
Microgravity may profoundly impact the cardiovascular system, skeletal muscle system, and immune system of astronauts. At the cellular level, microgravity may also affect cell proliferation, differentiation, and growth, as well as lipid metabolism. In this work, we investigated lipid changes in Caco-2 cells cultured in a clinostat for 24 h under simulated microgravity conditions (SMC). Complex lipids were measured using a UHPLC-QTOF/MS platform, and the data were subjected to multivariate analysis. Under SMC, levels of ceramides Cer 18:0;O2/16:0, Cer 18:1;O2/16:0, Cer 18:1; O2/22:0, Cer 18:1;O2/24:0, and Cer 18:2;O2/24:0 were found to be upregulated, while sphingomyelins SM 16:1;O2/16:0, SM 16:1;O2/18:1, SM 18:1;O2/24:0, and SM 18:2;O2/24:0 were found to be downregulated. On the other hand, considering that sphingolipids are involved in the process of inflammation, we also treated Caco-2 cells with dextran sodium sulfate (DSS) to induce cell inflammation and lipopolysaccharide (LPS) to induce cell immune responses. As a result, we observed similar lipid dysregulation, indicating that SMC may exert a condition similar to inflammation. Our lipidomics strategy provides new insights into the altered metabolic pathway of ceramides and sphingomyelins of Caco-2 cells under SMC.
微重力可能会对宇航员的心血管系统、骨骼肌系统和免疫系统产生深远影响。在细胞水平上,微重力还可能影响细胞增殖、分化和生长,以及脂质代谢。在这项研究中,我们调查了在模拟微重力条件(SMC)下,回转器中培养24小时的Caco-2细胞的脂质变化。使用超高效液相色谱-四极杆飞行时间质谱(UHPLC-QTOF/MS)平台测量复合脂质,并对数据进行多变量分析。在SMC条件下,发现神经酰胺Cer 18:0;O2/16:0、Cer 18:1;O2/16:0、Cer 18:1; O2/22:0、Cer 18:1;O2/24:0和Cer 18:2;O2/24:0的水平上调,而鞘磷脂SM 16:1;O2/16:0、SM 16:1;O2/18:1、SM 18:1;O2/24:0和SM 18:2;O2/24:0的水平下调。另一方面,考虑到鞘脂参与炎症过程,我们还用葡聚糖硫酸钠(DSS)处理Caco-2细胞以诱导细胞炎症,并用脂多糖(LPS)诱导细胞免疫反应。结果,我们观察到了类似的脂质失调,表明SMC可能会产生类似于炎症的状态。我们的脂质组学策略为SMC条件下Caco-2细胞神经酰胺和鞘磷脂代谢途径的改变提供了新的见解。